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3D Printed Personalized Surgical Models
The product is made from polylactic acid (PLA) material, utilizing patient data generated from imaging devices. This data is converted and reconstructed into a 3D model, which is then printed into a physical model using a 3D printer.
Product English Name:
3D Printed Personalized Surgical Models
Alias:
Custom Surgical Models,Patient-Specific 3D Models
Intended Use:
This product is suitable for displaying the anatomical structures of bone defects or lesions in the pelvis, limbs, skull, and spine. It serves as a simulated human model to assist clinical staff in planning surgical procedures and providing preoperative guidance.
Product Introduction

3D Printed Personalized Surgical Models are innovative tools designed to enhance surgical planning and patient outcomes. These models are created using advanced imaging and 3D printing technologies, allowing for precise replication of a patient's unique anatomy. They are particularly useful in complex surgeries where understanding the exact structure of bones and tissues is crucial.

1. The models are characterized by their high accuracy and customization, tailored to each patient's specific needs. They provide a tangible representation of the surgical site, which is invaluable for preoperative planning.
2. Structurally, these models are composed of polylactic acid, a biocompatible material that ensures safety and durability. The process involves converting imaging data into a 3D digital model, which is then printed layer by layer to create a physical replica.
3. The primary use of these models is to assist surgeons in visualizing and planning complex procedures. They help in identifying potential challenges and optimizing surgical approaches, ultimately leading to better patient outcomes.

3D Printed Personalized Surgical Models, also known as Custom Surgical Models or Patient-Specific 3D Models, are revolutionizing the way surgeries are planned and executed. By providing a detailed and accurate representation of a patient's anatomy, these models empower surgeons to make informed decisions and improve surgical precision.

Main Features

The main features of 3D Printed Personalized Surgical Models include high customization, accuracy, and the ability to provide a tangible representation of complex anatomical structures.

1. Customization: Each model is tailored to the specific anatomy of the patient, ensuring a perfect fit for surgical planning.
2. Accuracy: The models are highly accurate, replicating the patient's anatomy with precision, which is crucial for complex surgeries.
3. Material: Made from polylactic acid, the models are biocompatible and durable, ensuring safety and longevity.
4. Visualization: These models provide a 3D, tangible representation of the surgical site, aiding in better understanding and planning.
5. Preoperative Planning: They are invaluable tools for surgeons to plan and rehearse procedures, reducing the risk of complications.

The 3D Printed Personalized Surgical Models stand out for their customization, accuracy, and the ability to provide a tangible, detailed representation of a patient's anatomy. These features make them indispensable tools in modern surgical planning, helping surgeons to achieve better outcomes with greater precision.

Clinical Applications

3D Printed Personalized Surgical Models are widely used in clinical settings for preoperative planning, surgical training, and patient education.

1. Preoperative Planning: Surgeons use these models to plan complex procedures, ensuring a clear understanding of the patient's anatomy before the actual surgery.
2. Surgical Training: These models are used in training programs to help new surgeons practice and understand complex surgical techniques.
3. Patient Education: They are also used to educate patients about their condition and the planned surgical procedure, helping to alleviate anxiety and improve understanding.
4. Research and Development: These models are valuable in medical research, allowing for the study of new surgical techniques and the development of innovative medical devices.
5. Custom Implants: In some cases, these models are used to create custom implants that perfectly match the patient's anatomy, improving the success rate of surgeries.

The clinical applications of 3D Printed Personalized Surgical Models are vast and impactful. From preoperative planning to surgical training and patient education, these models are transforming the way surgeries are approached, leading to better outcomes and enhanced patient care.

Purchasing Guide

When purchasing 3D Printed Personalized Surgical Models, it is important to consider factors such as product specifications, types, budget, and intended use.

1. Product Specifications: Ensure that the model meets the required accuracy and material standards, particularly for biocompatibility and durability.
2. Product Types: There are various types of models available, each designed for specific anatomical regions or surgical procedures. Choose the one that best fits your needs.
3. Budget: Consider the cost of the model, including any additional services such as customization or expedited production.
4. Use Scenarios: Evaluate the intended use of the model, whether for preoperative planning, training, or patient education, to ensure it meets your requirements.

Purchasing 3D Printed Personalized Surgical Models requires careful consideration of various factors, including product specifications, types, budget, and intended use. By taking these into account, you can ensure that the model you choose will effectively meet your surgical planning and training needs.

 Precautions

When using 3D Printed Personalized Surgical Models, it is important to follow certain precautions to ensure safety and effectiveness.

1. Material Safety: Ensure that the materials used in the model are biocompatible and safe for handling, especially if they will be used in a sterile environment.
2. Accuracy Verification: Always verify the accuracy of the model against the patient's actual anatomy before using it for surgical planning.
3. Sterilization: If the model is to be used in a sterile environment, follow proper sterilization procedures to prevent contamination.
4. Handling and Storage: Handle the model with care to avoid damage, and store it in a safe, dry place to maintain its integrity.
5. Regulatory Compliance: Ensure that the model complies with relevant medical regulations and standards, particularly if it is to be used in clinical settings.

Using 3D Printed Personalized Surgical Models requires attention to detail and adherence to safety protocols. By following these precautions, you can ensure that the models are used effectively and safely, contributing to successful surgical outcomes.

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